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Live-seq enables temporal transcriptomic recording of single cells
Wanze Chen, Orane Guillaume‐Gentil, Pernille Yde Rainer, Christoph G. Gäbelein, Wouter Saelens, Vincent Gardeux, Amanda Klaeger, Riccardo Dainese, Magda Zachara, Tomaso Zambelli, Julia A. Vorholt, Bart Deplancke
Nature · 2022 · ▲ 244 citations
Abstract
Abstract Single-cell transcriptomics (scRNA-seq) has greatly advanced our ability to characterize cellular heterogeneity 1 . However, scRNA-seq requires lysing cells, which impedes further molecular or functional analyses on the same cells. Here, we established Live-seq, a single-cell transcriptome profiling approach that preserves cell viability during RNA extraction using fluidic force microscopy 2,3 , thus allowing to couple a cell’s ground-state transcriptome to its downstream molecular or phenotypic behaviour. To benchmark Live-seq, we used cell growth, functional responses and whole-cell transcriptome read-outs to demonstrate that Live-seq can accurately stratify diverse cell types and states without inducing major cellular perturbations. As a proof of concept, we show that Live-seq can be used to directly map a cell’s trajectory by sequentially profiling the transcriptomes of individual macrophages before and after lipopolysaccharide (LPS) stimulation, and of adipose stromal cells pre- and post-differentiation. In addition, we demonstrate that Live-seq can function as a transcriptomic recorder by preregistering the transcriptomes of individual macrophages that were subsequently monitored by time-lapse imaging after LPS exposure. This enabled the unsupervised, genome-wide ranking of genes on the basis of their ability to affect macrophage LPS response heterogeneity, revealing basal Nfkbia expression level and cell cycle state as important phenotypic determinants, which we experimentally validated. Thus, Live-seq can address a broad range of biological questions by transforming scRNA-seq from an end-point to a temporal analysis approach.
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- DOI
- 10.1038/s41586-022-05046-9
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- 2026-07-25 MST
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APA
Chen, W., Guillaume‐Gentil, O., Rainer, P.Y., Gäbelein, C.G., Saelens, W., Gardeux, V., Klaeger, A., Dainese, R., Zachara, M., Zambelli, T., Vorholt, J.A., & Deplancke, B. (2022). Live-seq enables temporal transcriptomic recording of single cells. <em>Nature</em>. https://doi.org/10.1038/s41586-022-05046-9
Vancouver
Chen W, Guillaume‐Gentil O, Rainer PY, Gäbelein CG, Saelens W, Gardeux V, et al. Live-seq enables temporal transcriptomic recording of single cells. Nature. 2022. doi:10.1038/s41586-022-05046-9.
BibTeX
@article{wanze2022Livese,
title = {Live-seq enables temporal transcriptomic recording of single cells},
author = {Wanze Chen and Orane Guillaume‐Gentil and Pernille Yde Rainer and Christoph G. Gäbelein and Wouter Saelens and Vincent Gardeux and Amanda Klaeger and Riccardo Dainese and Magda Zachara and Tomaso Zambelli and Julia A. Vorholt and Bart Deplancke},
journal = {Nature},
year = {2022},
doi = {10.1038/s41586-022-05046-9},
}
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